Dimensional Characteristics of Powders Produced Under Conditions of Electroerosive Metallurgy of T5K10 Hard-Alloy Waste in Kerosene

Author:

Ageeva E. V.,Ageev E. V.,Podanov V. O.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics

Reference12 articles.

1. A. K. Kuleshov, V. V. Khodasevich, V. V. Uglov, V. M. Anishchik, and M. M. Danilenok, “Thermal stability of surface layers of titanium and chromium nitrides formed by condensation with ion bombardment on T5K10 hard alloy,” Perspekt. Mater., No. 2, 68–73 (2009).

2. S. I. Bogodukhov, A. S. Kilov, E. S. Kozik, E. A. Shein, B. M. Sheinin, and R. R. Khaibullin, “Increasing the wear resistance of the T5K10 alloy,” Vest. Orenburg. Gos. Univ., No. 10 (116), 127–130 (2010).

3. I. A. Pinakhin, V. A. Chernigovsky, A. A. Bratsikhin, and M. A. Yagmurov, “Improving the wear resistance of hard alloys VK6, VK8, T5K10, T15K6 by volumetric pulsed laser hardening,” Tren. Iznos, 36, No. 4, 429–432 (2015).

4. I. A. Pinakhin, V. A. Chernigovsky, A. A. Bratsikhin, M. A. Yagmurov, and Kh. R. Sutarov, “Investigation of the physical and mechanical properties of hard alloys VK6, VK8, and T5K10 after volumetric pulsed laser hardening,” Zavodskaya Labor. Diagnostika Mater., 83, No. 3, 37–40 (2017).

5. E. V. Dudkin, S. G. Postupaeva, “Quality of a hard alloy and instrumental support for automated production,” Izv. Volgogradsk. Gos. Tekhn. Univ., No. 9 (47), 72–75 (2008).

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